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Photodynamic therapy with redaporfin targets the endoplasmic reticulum and Golgi apparatus

机译:Redaporfin的光动力疗法靶向内质网和高尔基体

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摘要

Preclinical evidence depicts the capacity of redaporfin (Redp) to act as potent photosensitizer, causing direct antineoplastic effects as well as indirect immune‐dependent destruction of malignant lesions. Here, we investigated the mechanisms through which photodynamic therapy (PDT) with redaporfin kills cancer cells. Subcellular localization and fractionation studies based on the physicochemical properties of redaporfin revealed its selective tropism for the endoplasmic reticulum (ER) and the Golgi apparatus (GA). When activated, redaporfin caused rapid reactive oxygen species‐dependent perturbation of ER/GA compartments, coupled to ER stress and an inhibition of the GA‐dependent secretory pathway. This led to a general inhibition of protein secretion by PDT‐treated cancer cells. The ER/GA play a role upstream of mitochondria in the lethal signaling pathway triggered by redaporfin‐based PDT. Pharmacological perturbation of GA function or homeostasis reduces mitochondrial permeabilization. In contrast, removal of the pro‐apoptotic multidomain proteins BAX and BAK or pretreatment with protease inhibitors reduced cell killing, yet left the GA perturbation unaffected. Altogether, these results point to the capacity of redaporfin to kill tumor cells via destroying ER/ style="fixed-case">GA function.
机译:临床前证据描述了Redaporfin(Redp)充当强效光敏剂的能力,引起直接的抗肿瘤作用以及间接的免疫依赖性破坏恶性病变。在这里,我们调查了与雷达泊芬进行光动力疗法(PDT)杀死癌细胞的机制。基于redaporfin的理化性质的亚细胞定位和分级分离研究表明其对内质网(ER)和高尔基体(GA)的选择性趋向性。激活后,redaporfin引起ER / GA隔室快速依赖于活性氧的扰动,再加上ER应激和对GA依赖的分泌途径的抑制。这导致PDT处理的癌细胞普遍抑制蛋白质分泌。 ER / GA在基于redaporfin的PDT触发的致死信号通路中在线粒体上游发挥作用。 GA功能或体内平衡的药理扰动可降低线粒体通透性。相反,去除促凋亡的多结构域蛋白BAX和BAK或用蛋白酶抑制剂预处理可减少细胞杀伤力,但GA扰动不受影响。总而言之,这些结果表明redaporfin通过破坏ER / style = fixed-case“> GA 功能杀死肿瘤细胞的能力。

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